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A degeneration-based hypothesis for interpreting fibrillar changes in the osteoarthritic cartilage matrix

机译:基于变性的假说用于解释骨关节炎软骨基质中的原纤维变化

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摘要

The collagen fibrillar architectures in the general matrix of cartilage slices removed from both normal and osteoarthritic femoral heads were examined by both differential interference light microscopy and scanning electron microscopy. Whereas the normal general matrix contained a finely differentiated pseudo-random weave of fibrils developed from an interconnected array of radial elements, the osteoarthritic general matrix was characterised by the presence of structurally distinct regions consisting of strongly aligned radial bundles of fibrils and associated intense tangles or ‘knotted’ features. Simple structural models were developed to explore possible transformation structures based on two different types of interconnectivity in the three-dimensional fibrillar network. These models support the hypothesis that the distinctive ultrastructural features of the osteoarthritic general matrix can develop as a consequence of largely passive degradative changes occurring in the fibrillar weave originally present in the normal matrix. This could, in principle, occur independently of any new structure that might develop as a consequence of any upregulation of collagen associated with the osteoarthritic process.
机译:通过差动干涉光学显微镜和扫描电子显微镜检查从正常和骨关节炎股骨头中取出的软骨切片的一般基质中的胶原纤维结构。正常的普通基质包含由相互连接的径向元素阵列形成的细微拟原纤维的伪随机编织,而骨关节炎普通基质的特征是存在结构上截然不同的区域,该区域由强烈排列的原纤维径向束和相关的缠结或“打结”功能。开发了简单的结构模型以探索基于三维纤维状网络中两种不同类型的互连性的可能转换结构。这些模型支持这样的假说,即骨关节炎普通基质的独特超微结构特征可能是原先存在于正常基质的原纤维组织中发生的很大程度上被动降解变化的结果。原则上,这可以独立于与骨关节炎过程相关的胶原蛋白上调的任何新结构而发生。

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